Department of Molecular and Cellular Biology, Kennesaw State University, 1000 Chastain Road NW, Kennesaw, GA 30144, USA.
J Ind Microbiol Biotechnol. 2023 Feb 17;50(1). doi: 10.1093/jimb/kuad014.
Melanins represent a diverse collection of pigments with a variety of structures and functions. One class of melanin, eumelanin, is recognizable to most as the source of the dark black color found in cephalopod ink. Sepia officinalis is the most well-known and sought-after source of non-synthetic eumelanin, but its harvest is limited by the availability of cuttlefish, and its extraction from an animal source brings rise to ethical concerns. In recent years, these limitations have become more pressing as more applications for eumelanin are developed-particularly in medicine and electronics. This surge in interest in the applications of eumelanin has also fueled a rise in the interest of alternative, bio-catalyzed production methods. Many culinarily-utilized fungi are ideal candidates in this production scheme, as examples exist which have been shown to produce eumelanin, their growth at large scales is well understood, and they can be cultivated on recaptured waste streams. However, much of the current research on the fungal production of eumelanin focuses on pathogenic fungi and eumelanin's role in virulence. In this paper, we will review the potential for culinary fungi to produce eumelanin and provide suggestions for new research areas that would be most impactful in the search for improved fungal eumelanin producers.
黑色素是一类具有多种结构和功能的色素的统称。黑色素的一种,真黑色素,是大多数人所熟知的,它是头足类动物墨汁中深色黑色的来源。乌贼墨是最著名和最受欢迎的天然真黑色素来源,但由于乌贼的供应有限,其收获受到限制,而且从动物来源提取真黑色素也引起了伦理问题。近年来,随着真黑色素应用的开发越来越多——尤其是在医学和电子领域,这些限制变得更加紧迫。对真黑色素应用的兴趣增加,也促使人们对替代的、生物催化的生产方法产生了兴趣。许多在烹饪中使用的真菌是这种生产方案的理想候选者,因为已经有例子表明它们可以产生真黑色素,人们对它们的大规模生长有很好的了解,并且可以在回收的废物流上培养它们。然而,目前关于真菌生产真黑色素的研究大多集中在致病性真菌和真黑色素在毒力中的作用上。在本文中,我们将回顾烹饪真菌生产真黑色素的潜力,并为新的研究领域提供建议,这些建议将在寻找改进的真菌真黑色素生产菌方面产生最大的影响。